Asparagus

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Asparagus
Asparagus-Bundle.jpg
A bundle of cultivated asparagus
Scientific classification OOjs UI icon edit-ltr.svg
Kingdom: Plantae
Clade: Tracheophytes
Clade: Angiosperms
Clade: Monocots
Order: Asparagales
Family: Asparagaceae
Subfamily: Asparagoideae
Genus: Asparagus
Species:
A. officinalis
Binomial name
Asparagus officinalis
L.
Synonyms [2]
List
  • Asparagus altilis(L.) Asch.
  • Asparagus caspiusSchult. & Schult.f.
  • Asparagus esculentusSalisb.
  • Asparagus fioriSennen
  • Asparagus hedecarpusAndrews ex Baker"
  • Asparagus hortensisMill. ex Baker
  • Asparagus littoralisSteven
  • Asparagus oxycarpusSteven
  • Asparagus paragusGueldenst. ex Ledeb.
  • Asparagus polyphyllusSteven ex Ledeb.
  • Asparagus sativusMill.
  • Asparagus setiformisKrylov
  • Asparagus vulgarisGueldenst. ex Ledeb.

Asparagus (Asparagus officinalis) is a perennial flowering plant species in the genus Asparagus native to Eurasia. Widely cultivated as a vegetable crop, its young shoots are used as a spring vegetable.

Contents

Description

Adult plant with fruits Asparagus officinalis 2.jpg
Adult plant with fruits

Asparagus is an herbaceous, perennial plant [3] growing to 100–150 centimetres (3–5 feet) tall, with stout stems with much-branched, feathery foliage. The 'leaves' are needle-like cladodes (modified stems) in the axils of scale leaves; they are 6–32 millimetres (141+14 inches) long and 1 mm (132 in) broad, and clustered in fours, up to 15, together, in a rose-like shape. [4] The root system, often referred to as a 'crown', is adventitious; the root type is fasciculated. The flowers are bell-shaped, greenish-white to yellowish, 4.5–6.5 mm (31614 in) long, with six tepals partially fused together at the base; they are produced singly or in clusters of two or three in the junctions of the branchlets. It is usually dioecious, with male and female flowers on separate plants, but sometimes hermaphrodite flowers are found. The fruit is a small red berry 6–10 mm (141332 in) in diameter, which is toxic to humans. [5]

Plants native to the western coasts of Europe (from northern Spain to northwest Germany, north Ireland, and Great Britain) are treated as A. officinalis subsp. prostratus(Dumort.) Corb., distinguished by its low-growing, often prostrate stems growing to only 30–70 cm (12–28 in) high, and shorter cladodes 2–18 mm (3322332 in) long. [6] [7] Some authors treat it as a distinct species, A. prostratusDumort. [8] [9]

Asparagus shoot before becoming woody Asparagus Tip.jpg
Asparagus shoot before becoming woody

Taxonomy

Asparagus was once classified in the lily family, as were the related Allium species onions and garlic. Genetic research currently places lilies, Allium, and asparagus in three separate families: the Liliaceae, Amaryllidaceae, and Asparagaceae, respectively. The latter two are part of the order Asparagales.[ citation needed ]

Etymology

The English word asparagus derives from classical Latin but the plant was once known in English as sperage, from the Medieval Latin sparagus. [Note 1] This term itself derives from the Ancient Greek : ἀσπάραγος - aspáragos, a variant of Ancient Greek : ἀσφάραγος - aspháragos. The Greek terms are of uncertain provenance; the former form admits the possibility of a Proto-Indo-European root meaning "to jerk, scatter," directly or via a Persian descendant meaning "twig, branch"; but the Ancient Greek word itself, meaning "gully, chasm," seems to be of Pre-Greek origin instead.

In English, A. officinalis is widely known simply as "asparagus", or sometimes "garden asparagus".

Asparagus was corrupted by folk etymology in some places to "sparrow grass"; indeed, John Walker wrote in 1791 that "Sparrowgrass is so general that asparagus has an air of stiffness and pedantry". [10] The name 'sparrow grass' was still in common use in rural East Anglia, England well into the twentieth century. [11]

Distribution and habitat

Sources differ as to the plant's native range, but generally include most of Europe and western temperate Asia. [12] [6] [13] [14]

Cultivation

Since asparagus often originates in maritime habitats, it thrives in soils that are too saline for normal weeds to grow. Thus, a little salt was traditionally used to suppress weeds in beds intended for asparagus; this has the disadvantage that the soil cannot be used for anything else. Some regions and gardening zones are better-suited for growing asparagus than others, such as the west coast of North America and other more maritime, “Mediterranean” environments. The fertility of the soil is a large factor. "Crowns" are planted in winter, and the first shoots appear in spring; the first pickings or "thinnings" are known as sprue asparagus. Sprue has thin stems. [15]

A breed of "early-season asparagus" that can be harvested two months earlier than usual was announced by a UK grower in early 2011. [16] This variety does not need to lie dormant and blooms at 7 °C (45 °F), rather than the usual 9 °C (48 °F).

Purple asparagus differs from its green and white counterparts in having high sugar and low fibre levels. Purple asparagus was originally developed in Italy, near the city of Albenga and commercialized under the variety name 'Violetto d' Albenga'. [17] Purple asparagus can also turn green while being cooked due to its sensitivity to heat. [18]

Companion planting

Asparagus is said to be a useful companion plant for tomatoes, as the tomato plant repels the asparagus beetle. Asparagus may repel some harmful root nematodes that affect tomato plants. [19]

Uses

The genome of the species has been sequenced as a model to study the evolution of sex chromosomes in plants and dioecy. [20]

Nutrition

Water makes up 93% of asparagus's composition. [21] Asparagus is low in food energy and very low in sodium. It is a good source of vitamin B6, calcium, magnesium, and zinc, and a very good source of dietary fibre, protein, beta-carotene, vitamin C, vitamin E, vitamin K, thiamin, riboflavin, rutin, niacin, folic acid, iron, phosphorus, potassium, copper, manganese, and selenium, [22] [23] as well as chromium, a trace mineral that regulates the ability of insulin to transport glucose from the bloodstream into cells. [24] The amino acid asparagine gets its name from asparagus, from which it was first isolated, as the asparagus plant is relatively rich in this compound.

Asparagus
Nutritional value per 100 g (3.5 oz)
Energy 85 kJ (20 kcal)
4 g
Sugars 1.88 g
Dietary fibre 2.1 g
Fat
0.12 g
2.2 g
Vitamins and minerals
Vitamins Quantity
%DV
Vitamin A equiv.
4%
38 μg
4%
449 μg
710 μg
Thiamine (B1)
12%
0.143 mg
Riboflavin (B2)
11%
0.141 mg
Niacin (B3)
6%
0.978 mg
Pantothenic acid (B5)
5%
0.274 mg
Vitamin B6
5%
0.091 mg
Folate (B9)
13%
52 μg
Choline
3%
16 mg
Vitamin C
6%
5.6 mg
Vitamin E
7%
1.1 mg
Vitamin K
35%
41.6 μg
Minerals Quantity
%DV
Calcium
2%
24 mg
Iron
12%
2.14 mg
Magnesium
3%
14 mg
Manganese
7%
0.158 mg
Phosphorus
4%
52 mg
Potassium
7%
202 mg
Sodium
0%
2 mg
Zinc
5%
0.54 mg

Percentages estimated using US recommendations for adults, [25] except for potassium, which is estimated based on expert recommendation from the National Academies. [26]
Serving of "white asparagus" with Hollandaise sauce and potatoes Spargel sauce hollandaise.jpg
Serving of "white asparagus" with Hollandaise sauce and potatoes

Culinary

Only young asparagus shoots are commonly eaten: once the buds start to open ("ferning out"), the shoots quickly turn woody. [27] The roots contain starch. [28]

The shoots are prepared and served in a number of ways around the world, typically as an appetizer [29] or vegetable side dish. In Asian-style cooking, asparagus is often stir-fried. Cantonese restaurants in the United States often serve asparagus stir-fried with chicken, shrimp, or beef. [30] It may also be quickly grilled over charcoal or hardwood embers, and is also used as an ingredient in some stews and soups.

Asparagus can also be pickled and stored for several years. Some brands label shoots prepared in this way as "marinated".

Stem thickness indicates the age of the plant (and not the age of the stalk), with the thicker stems coming from older plants. Older, thicker stalks can be woody, although peeling the skin at the base removes the tough layer. Peeled asparagus will poach much faster. [31] The bottom portion of asparagus often contains sand and soil, so thorough cleaning is generally advised before cooking.

Male plants tend to produce spears that are smaller and thinner, while female plants tend produce larger and thicker spears. [32] Thickness and thinness are not an indication of tenderness or toughness. The stalks are thick or thin from the moment they sprout from the ground. [32]

Green asparagus is eaten worldwide, and the availability of imports throughout the year has made it less of a delicacy than it once was. [7] In Europe, according to one source, the "asparagus season is a highlight of the foodie calendar"; in the UK this traditionally begins on 23 April and ends on Midsummer Day. [33] [34] As in continental Europe, due to the short growing season and demand for local produce, asparagus commands a premium price.

Commercial production

Cultivated asparagus output in 2005 shown as a percentage of the top producer (China)

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100
10
1 2005asparagus.PNG
Cultivated asparagus output in 2005 shown as a percentage of the top producer (China)
  100
  10
  1

The top asparagus importers (2016) were the United States (214,735 tonnes), followed by Germany (24,484 tonnes), and Canada (19,224 tonnes). [35]

China is by far the world's largest producer: in 2017 it produced 7,845,162 tonnes, followed by Peru with 383,098 tonnes and Mexico with 245,681 tonnes. [35] U.S. production was concentrated in California, Michigan, and Washington. [36] [37] The annual production for white asparagus in Germany is 57,000 tonnes (61% of consumer demand). [38]

When grown under tunnels, growers can extend the harvest season. In the UK, it is estimated that the asparagus harvest season can begin as early as mid-February and continue into late autumn by growing cold-resistant cultivars under heated polytunnels. Furthermore, late season harvests can be achieved using 'reverse season growth' where spears are left to fern between March–August and harvested in September–October. [39] [40]

In Asia, an alternative approach to cultivating asparagus has been employed and is referred to as 'Mother Stalk Method' where three to five stalks per plant are allowed to develop into fern, while harvesting adjacent spears. [41]

White asparagus

Steam-boiling asparagus in a pot Steam-boiling green asparagus.jpg
Steam-boiling asparagus in a pot
Asparagus with Hollandaise sauce 21 05 01 Daniela Kloth Spargel MG 0720.jpg
Asparagus with Hollandaise sauce

White asparagus is very popular in Europe and western Asia.[ citation needed ] White asparagus is the result of applying a blanching technique while the asparagus shoots are growing. [42] To cultivate white asparagus, the shoots are covered with soil as they grow, i.e. earthed up; without exposure to sunlight, no photosynthesis starts, and the shoots remain white. Compared to green asparagus, the locally cultivated so-called "white gold" or "edible ivory" asparagus, also referred to as "the royal vegetable", [43] is believed to be less bitter and much more tender. Freshness is very important, and the lower ends of white asparagus must be peeled before cooking or raw consumption.

Only seasonally on the menu, asparagus dishes are advertised outside many restaurants, usually from late April to June. For the French style, asparagus is often boiled or steamed and served with Hollandaise sauce, white sauce, melted butter or most recently with olive oil and Parmesan cheese. [44] Tall, narrow asparagus cooking pots allow the shoots to be steamed gently, their tips staying out of the water.

During the German Spargelsaison or Spargelzeit ("asparagus season" or "asparagus time"), the asparagus season that traditionally finishes on 24 June, roadside stands and open-air markets sell about half of the country's white asparagus consumption. [45]

In western Himalayan regions, such as Nepal and north-western India, wild asparagus is harvested as a seasonal vegetable delicacy known as kurilo or jhijhirkani. [46]

In culture

Asparagus has been used as a vegetable owing to its distinct flavor, and in medicine due to its diuretic properties and its purported function as an aphrodisiac. It is pictured as an offering on an Egyptian frieze dating to 3000 BC. In ancient times, it was also known in Syria and in the Iberian Peninsula. Greeks and Romans ate it fresh when in season, and dried the vegetable for use in winter. Emperor Augustus coined the expression "faster than cooking asparagus" for quick action. [Note 2] [47] [48]

A recipe for cooking asparagus is given in one of the oldest surviving collections of recipes (Apicius's 1st century AD De re coquinaria , Book III). In the second century AD, the Greek physician Galen, highly respected within Roman society, mentioned asparagus as a beneficial herb, but as dominance of the Roman empire waned, asparagus' medicinal value drew little attention [49] [Note 1] until al-Nafzawi's The Perfumed Garden . That piece of writing celebrates its purported aphrodisiacal power that the Indian Ananga Ranga attributes to "special phosphorus elements" that also counteract fatigue.[ dubious discuss ]

By 1469, asparagus was cultivated in French monasteries. Asparagus appears to have been little noticed in England until 1538, [Note 1] and in Germany until 1542. [48]

Asparagus was brought to North America by European settlers at least as early as 1655. Adriaen van der Donck, a Dutch immigrant to New Netherland, mentions asparagus in his description of Dutch farming practices in the New World. [50] Asparagus was grown by British immigrants as well; in 1685, one of William Penn's advertisements for Pennsylvania included asparagus in a long list of crops that grew well in the American climate. [51]

The points d'amour ("love tips") were served as a delicacy to Madame de Pompadour (1721–1764). [52]

External videos
Julia Child at KUHT.jpg
Nuvola apps kaboodle.svg The French Chef; Asparagus From Tip to Butt, Julia Child, 25 April 1966, 29:16, WGBH Open Vault [53]

Effects on urine

The effect of eating asparagus on urine excreted afterwards has long been observed:

[Asparagus] cause a powerful and disagreeable smell in the urine, as everybody knows.

Treatise of All Sorts of Foods, Louis Lémery, 1702 [54]

asparagus... affects the urine with a foetid smell (especially if cut when they are white) and therefore have been suspected by some physicians as not friendly to the kidneys; when they are older, and begin to ramify, they lose this quality; but then they are not so agreeable.

— "An Essay Concerning the Nature of Aliments", John Arbuthnot, 1735 [55]

A few Stems of Asparagus eaten, shall give our Urine a disagreeable Odour...

— "Letter to the Royal Academy of Brussels", Benjamin Franklin, c. 1781 [56]

Asparagus "...transforms my chamber-pot into a flask of perfume."

Marcel Proust (1871–1922) [57]

Asparagus contains asparagusic acid. When the vegetable is digested, a group of volatile sulfur-containing compounds is produced. [58]

Asparagus foliage turns bright yellow in autumn. AsparagusinAutumn3.JPG
Asparagus foliage turns bright yellow in autumn.

Certain compounds in asparagus are metabolized to yield ammonia and various sulfur-containing degradation products, including various thiols and thioesters, [59] which following consumption give urine a characteristic smell. Some [60] of the volatile organic compounds responsible for the smell are: [61] [62]

Subjectively, the first two are the most pungent, while the last two (sulfur-oxidized) give a sweet aroma. A mixture of these compounds form a "reconstituted asparagus urine" odor. This was first investigated in 1891 by Marceli Nencki, who attributed the smell to methanethiol. [63] These compounds originate in the asparagus as asparagusic acid and its derivatives, as these are the only sulfur-containing compounds unique to asparagus. As these are more present in young asparagus, this accords with the observation that the smell is more pronounced after eating young asparagus. The biological mechanism for the production of these compounds is less clear.[ citation needed ]

The onset of the asparagus urine smell is remarkably rapid while the decline is slower. The smell has been reported to be detectable 15 to 30 minutes after ingestion [64] [65] and subsides with a half-life of approximately four hours. [66] Asparagus has been eaten and cultivated for at least two millennia but the association between odorous urine and asparagus consumption was not observed until the late 17th century when sulfur-rich fertilisers became common in agriculture. [67] Small-scale studies noted that the "asparagus urine" odour was not produced by all individuals and estimates as to the proportion of the population who are excretors (reporting a noticeable asparagus urine odour after eating asparagus) has ranged from about 40% [68] to as high as 79%. [69] [66] When excretors are exposed to non-excretor urine after asparagus consumption, however, the characteristic asparagus urine odour is usually reported. [67] More recent work has confirmed that a small proportion of individuals do not produce asparagus urine, and amongst those that do, some cannot detect the odour due to a single-nucleotide polymorphism within a cluster of olfactory receptors. [70]

Debate exists about the universality of producing the sulfurous smell, as well as the ability to detect it. Originally, this was thought to be because some people digested asparagus differently from others, so some excreted odorous urine after eating asparagus, and others did not. In the 1980s, three studies from France, [71] China, and Israel published results showing that producing odorous urine from asparagus was a common human characteristic. The Israeli study found that from their 307 subjects, all of those who could smell "asparagus urine" could detect it in the urine of anyone who had eaten asparagus, even if the person who produced it could not detect it. [72] A 2010 study [73] found variations in both production of odorous urine and the ability to detect the odor, but that these were not tightly related. Most people are thought to produce the odorous compounds after eating asparagus, but the differing abilities of various individuals to detect the odor at increasing dilutions suggests a genetically determined specific sensitivity. [74] [75] [76]

In 2010, the company 23andMe published a genome-wide association study on whether participants have "ever noticed a peculiar odor when [they] pee after eating asparagus". [77] This study pinpointed a single-nucleotide polymorphism (SNP) in a cluster of olfactory genes associated with the ability to detect the odor. While this SNP did not explain all of the difference in detection between people, it provides support for the theory that genetic differences occur in olfactory receptors that lead people to be unable to smell these odorous compounds.

Celebrations

The green crop is significant enough in California's Sacramento–San Joaquin River Delta region that the city of Stockton holds a festival every year to celebrate it. Oceana County, Michigan, the self-proclaimed "asparagus capital of the world" hosts an annual festival complete with a parade and asparagus queen; [78] The Vale of Evesham in Worcestershire is the largest producer within Northern Europe,[ citation needed ] celebrating with the annual British Asparagus Festival involving auctions of the best crop, an "Asparagus Run" modelled on the Beaujolais Run and a weekend "Asparafest" music festival. [79]

Many German cities hold an annual Spargelfest (asparagus festival) celebrating the harvest of white asparagus. Schwetzingen claims to be the "Asparagus Capital of the World", [80] and during its festival, an Asparagus Queen is crowned. The Bavarian city of Nuremberg feasts a week long in April, with a competition to find the fastest asparagus peeler in the region; this usually involves generous amounts of the local wines and beers being consumed to aid the spectators' appreciative support.

Helmut Zipner, who peeled a ton of asparagus in 16 hours, holds the world record in asparagus peeling. [80]

See also

Notes

  1. 1 2 3 In the eleventh century AD the word "sparagus" appeared in an English text. See Brunning (June 2010), p. 6. – Brunning uses the term "in print", though no printing technique was used in England at the time. In the same sentence, she states that peasants often called it "sparrow grass", and further on mentions a 1667 diary in which Samuel Pepys bought a bundle of "sparrow grass" in Fenchurch Street, London.
  2. Latin velocius quam asparagi conquantur (or celerius quam asparagi cocuntur), ascribed to Augustus by Suetonius (The Lives of the Twelve Caesars, Book 2 (Augustus), para. 87). See List of Latin phrases (V).

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An odor or odour is a smell or a scent caused by one or more volatilized chemical compounds generally found in low concentrations that humans and many animals can perceive via their olfactory system. While smell can refer to pleasant and unpleasant odors, the terms scent, aroma, and fragrance are usually reserved for pleasant-smelling odors and are frequently used in the food and cosmetic industry to describe floral scents or to refer to perfumes.

<span class="mw-page-title-main">Sense of smell</span> Sense that detects smells

The sense of smell, or olfaction, is the special sense through which smells are perceived. The sense of smell has many functions, including detecting desirable foods, hazards, and pheromones, and plays a role in taste.

<span class="mw-page-title-main">Smelly socks</span> Clothing

Smelly socks are socks that have acquired a foul odor due to prolonged wearing on feet. Their odor, which is complex and remains the object of study, is a mixture of ammonia, fatty acids, and lactic acid.

<i>Allium ochotense</i> Species of plant

Allium ochotense, the Siberian onion, is a primarily East Asian species of wild onion native to northern Japan, Korea, China, and the Russian Far East, as well as on Attu Island in Alaska.

References

  1. Kell, S.P.; Rhodes, L.; Maxted, N. (2016). "Asparagus officinalis". IUCN Red List of Threatened Species . 2016: e.T176377A19392993. doi: 10.2305/IUCN.UK.2016-3.RLTS.T176377A19392993.en . Retrieved 26 January 2022.
  2. "The Plant List, Asparagus officinalis L."
  3. Grubben, G.J.H.; Denton, O.A., eds. (2004). Plant Resources of Tropical Africa 2: Vegetables. PROTA Foundation, Wageningen; Backhuys, Leiden; CTA, Wageningen.
  4. Diderot, D. (2009) [1772]. "Asparagus". The Encyclopedia of Diderot & d'Alembert. Retrieved 1 April 2015 via Collaborative Translation Project, University of Michigan.
  5. Garden Grow. (n.d.). "Growing Asparagus" . Retrieved 19 November 2019.
  6. 1 2 Flora Europaea. (n.d.). "Asparagus officinalis". Royal Botanic Garden Edinburgh. Retrieved 19 May 2010.
  7. 1 2 Blamey, M. & Grey-Wilson, C. (1989). Flora of Britain and Northern Europe. ISBN   0-340-40170-2.
  8. Stace, C. van der Meijden, R.; de Kort, I. (eds.). "Asparagus prostratus (Asparagus, Wild)". Interactive Flora of NW Europe. ETI BioInformatics. Archived from the original on 23 September 2009. Retrieved 19 May 2010.
  9. "Asparagus prostratus". Germplasm Resources Information Network . Agricultural Research Service, United States Department of Agriculture . Retrieved 19 May 2010.
  10. Walker, John (1806). A Critical Pronouncing Dictionary, and Expositor of the English Language . Retrieved 18 November 2016.
  11. Ewart Evans, George "Ask the Fellows who Cut the Hay"
  12. Plants of the World Online. (n.d.). "Asparagus officinalis L." Royal Botanic Gardens, Kew. Retrieved 31 May 2018.
  13. Euro+Med Plantbase Project. "Asparagus officinalis". Botanic Garden and Botanical Museum Berlin-Dahlem. Archived from the original on 11 August 2011. Retrieved 19 May 2010.
  14. "Asparagus officinalis". Germplasm Resources Information Network . Agricultural Research Service, United States Department of Agriculture . Retrieved 19 May 2010.
  15. "Glossary – 'S'". BBC Food . Retrieved 8 June 2007.
  16. "New breed of early asparagus hits the shelves". The Daily Telegraph. 19 March 2011. Retrieved 20 March 2011.
  17. Raymond, Francine (21 May 2014). "Asparagus: this season's hottest shades to grow". The Telegraph. Retrieved 21 May 2017.
  18. "Asparagus". College of Agricultural Sciences. 20 July 2010. Retrieved 21 December 2021.
  19. "Plants for a Future".
  20. Harkess, Alex; Zhou, Jinsong; Xu, Chunyan; Bowers, John E.; Van der Hulst, Ron; Ayyampalayam, Saravanaraj; Mercati, Francesco; Riccardi, Paolo; McKain, Michael R.; Kakrana, Atul; Tang, Haibao; Ray, Jeremy; Groenendijk, John; Arikit, Siwaret; Mathioni, Sandra M. (2 November 2017). "The asparagus genome sheds light on the origin and evolution of a young Y chromosome". Nature Communications. 8 (1): 1279. Bibcode:2017NatCo...8.1279H. doi:10.1038/s41467-017-01064-8. ISSN   2041-1723. PMC   5665984 . PMID   29093472.
  21. Snyder, Harry. (1908). "Human Foods and their Nutritive value". The MacMillan Company.
  22. "Nutrition Facts".
  23. USDA Agricultural Research Service Data section 11 (pg 61) Archived 13 January 2012 at the Wayback Machine
  24. Anderson, R A (October 1997). "Nutritional factors influencing the glucose/insulin system: chromium". Journal of the American College of Nutrition. 16 (5): 404–410. doi:10.1080/07315724.1997.10718705. ISSN   0731-5724. PMID   9322187.
  25. United States Food and Drug Administration (2024). "Daily Value on the Nutrition and Supplement Facts Labels". FDA. Archived from the original on 27 March 2024. Retrieved 28 March 2024.
  26. National Academies of Sciences, Engineering, and Medicine; Health and Medicine Division; Food and Nutrition Board; Committee to Review the Dietary Reference Intakes for Sodium and Potassium (2019). Oria, Maria; Harrison, Meghan; Stallings, Virginia A. (eds.). Dietary Reference Intakes for Sodium and Potassium. The National Academies Collection: Reports funded by National Institutes of Health. Washington, DC: National Academies Press (US). ISBN   978-0-309-48834-1. PMID   30844154. Archived from the original on 9 May 2024. Retrieved 21 June 2024.
  27. "Growing Asparagus in the Home Garden; Section on harvesting" (PDF). Purdue University Cooperative Extension Service. p. 2. Archived (PDF) from the original on 14 June 2001. Retrieved 31 January 2014.
  28. The Complete Guide to Edible Wild Plants. United States Department of the Army. New York: Skyhorse Publishing. 2009. p. 22. ISBN   978-1-60239-692-0. OCLC   277203364.{{cite book}}: CS1 maint: others (link)
  29. "10 Easy Asparagus Appetizers". Insanely Good Recipes. 14 December 2021. Retrieved 26 July 2023.
  30. "Asparagus". www.iatp.org. Retrieved 21 June 2024.
  31. "Ingredients – Asparagus". DrGourmet.com. Retrieved 20 July 2011.
  32. 1 2 Wolford, Ron; Banks, Drusilla. "Asparagus". Watch Your Garden Grow. University of Illinois Extension. Retrieved 3 May 2020.
  33. Oxford Times: "Time to glory in asparagus again". Archived 7 September 2009 at the Wayback Machine
  34. "Page Redirection". Archived from the original on 16 March 2009. Retrieved 3 March 2009.
  35. 1 2 "Food and Agriculture Organisation Statistics (FAOSTAT)" . Retrieved 8 September 2019.
  36. "Food and Agriculture Organisation Statistics (FAOSTAT)". Archived from the original on 7 November 2007. Retrieved 11 November 2007.
  37. USDA (January 2006). Vegetables 2005 Summary. National Agricultural Statistics Service.
  38. Spence, Molly. "Asparagus: The King of Vegetables". German Agricultural Marketing Board. Archived from the original (DOC) on 13 October 2007. Retrieved 26 February 2007.
  39. Hart, Carolyn (5 September 2015). "Asparagus in autumn? Meet the man behind its extended season" . Retrieved 3 January 2019.
  40. "U.K. grower creates asparagus market". Vegetable Growers News.
  41. Bhowmik, Pankaj Kumar; Matsui, Toshiyuki; Ikeuchi, Takao; Suzuki, Haruo (November 2002). "Changes in storage quality and shelf life of green asparagus over an extended harvest season". Postharvest Biology and Technology. 26 (3): 323–328. doi:10.1016/S0925-5214(02)00062-5.
  42. Creasy, Rosalind (15 March 1999). Edible French Garden. Tuttle Publishing. ISBN   978-1-4629-1759-4.
  43. "Wit goud en koningin der groente: vorstelijke asperges" (in Dutch). Netherlands: Infoyo (web publisher). 20 May 2009. Archived from the original on 19 January 2012. Retrieved 26 August 2011.
  44. Jules Gouffé; Etienne Antoine; Eugène Ronjat (5 August 2016). ""Chapitre XVI Légumes 71.Légumes"". Le Livre de cuisine: Comprenant la cuisine de ménage et la grande cuisine, 1893 (in French). BnF collection ebooks. ISBN   9782346013760 . Retrieved 28 April 2020. (Asperge is French for asparagus.)
  45. Evans, Stephen (21 April 2012). "Asparagus, royalty and the joys of seasonal eating". BBC News. Retrieved 22 April 2012.
  46. Kamal Prasad Aryal, Sushmita Poudel, Ram Prasad Chaudhary, Nakul Chettri, Pashupati Chaudhary, Wu Ning, Rajan Kotru (2018). "Diversity and use of wild and non-cultivated edible plants in the Western Himalaya". Journal of Ethnobiology and Ethnomedicine. 14 (1): 10. doi: 10.1186/s13002-018-0211-1 . PMC   5789610 . PMID   29378614.{{cite journal}}: CS1 maint: multiple names: authors list (link)
  47. Brunning, Pam (June 2010). "Asparagus – Liliaceae–Asparagacease" (PDF). Food & Wine (103). Archived (PDF) from the original on 1 October 2011. Retrieved 26 August 2011.
  48. 1 2 "Over asperge – Oudheid" (in Dutch). Stichting Afzetbevordering Asperges. Archived from the original on 31 March 2012. Retrieved 26 August 2011.
  49. Vaughan, John Griffith; Geissler, Catherine Alison; Nicholson, Barbara (1997). The New Oxford Book of Food Plants . Oxford University Press. ISBN   978-0-19-854825-6.
  50. Blackburn, Roderic H.; Kelley, Nancy A. (January 1987). New World Dutch Studies: Dutch Arts and Culture in Colonial America, 1609-1776 : Proceedings of the Symposium. SUNY Press. ISBN   978-1-4384-2989-2.
  51. Murphy, Andrew R. (8 October 2018). William Penn: A Life. Oxford University Press. ISBN   978-0-19-023426-3.
  52. "Wit goud en koningin der groente: vorstelijke asperges" (in Dutch). Netherlands: Infoyo (web publisher). 20 May 2009. Archived from the original on 19 January 2012. Retrieved 26 August 2011.
  53. "The French Chef; Asparagus From Tip to Butt". The Julia Child Project. WGBH Open Vault. 25 April 1966. Retrieved 16 September 2016.
  54. McGee, Harold (2004). "6". McGee on Food and Cooking. Hodder and Stoughton. p. 315. ISBN   978-0-340-83149-6.
  55. Arbuthnot J (1735). An Essay Concerning the Nature of Aliments (3rd ed.). London: J. Tonson. pp. 64261–262.
  56. Franklin, Benjamin (c. 1781). "Letter to the Royal Academy of Brussels". Archived from the original on 15 December 2012.
  57. From the French "[...] changer mon pot de chambre en un vase de parfum", Du côté de chez Swann, Gallimard, 1988.
  58. Stromberg, Joseph. "Why Asparagus Makes Your Urine Smell". smithsonianmag.com.
  59. White RH. (1975). "Occurrence of S-methyl thioesters in urines of humans after they have eaten asparagus". Science. 189 (4205): 810–11. Bibcode:1975Sci...189..810W. doi:10.1126/science.1162354. PMID   1162354.
  60. Pelchat, M. L.; Bykowski, C.; Duke, F. F.; Reed, D. R. (26 July 2010). "Excretion and Perception of a Characteristic Odor in Urine after Asparagus Ingestion: a Psychophysical and Genetic Study". Chemical Senses. 36 (1): 9–17. doi:10.1093/chemse/bjq081. PMC   3002398 . PMID   20876394.
  61. Waring RH, Mitchell SC, Fenwick GR (1987). "The chemical nature of the urinary odour produced by man after asparagus ingestion". Xenobiotica. 17 (11): 1363–1371. doi:10.3109/00498258709047166. PMID   3433805.
  62. Mitchell S.C. (2001). "Food idiosyncrasies: beetroot and asparagus". Drug Metabolism and Disposition. 29 (4): 539–543. PMID   11259347.
  63. Nencki, Marceli (1891). "Ueber das vorkommen von methylmercaptan im menschlichen harn nach spargelgenuss". Arch. Exp. Pathol. Pharmakol. 28 (3–4): 206–209. doi:10.1007/BF01824333. S2CID   26430677.
  64. Somer, E. (14 August 2000). "Eau D'Asparagus". WebMD. Archived from the original on 21 August 2006. Retrieved 31 August 2006.
  65. O'Neil, Carolyn; MS; RD. "Why Your Pee Smells Funny After Eating Asparagus". WebMD. Retrieved 26 October 2020.
  66. 1 2 van Hasselt, J. G. C.; Elassaiss-Schaap, J.; Ramamoorthy, A.; Sadler, B. M.; Kasichayanula, S.; Edwards, Y.; van der Graaf, P. H.; Zhang, L.; Wagner, J. A. (2016). "The proof is in the pee: Population asparagus urinary odor kinetics". PAGE: Abstracts of the Annual Meeting of the Population Approach Group in Europe. 25. ISSN   1871-6032 . Retrieved 7 July 2016.
  67. 1 2 Mitchell, S. C. (2001). "Food idiosyncrasies: Beetroot and asparagus". Drug Metabolism and Disposition . 29 (4): 539–543. PMID   11259347.
  68. Allison, A. C.; McWhirter, K. G. (1956). "Two unifactorial characters for which man is polymorphic". Nature . 178 (4536): 748–749. Bibcode:1956Natur.178..748A. doi:10.1038/178748c0. PMID   13369530. S2CID   4168673.
  69. Sugarman, J.; Neelon, F. A. (1985). "You're in for a treat: Asparagus". North Carolina Medical Journal . 46 (6): 332–334. PMID   3860737.
  70. Pelchat, M. L.; Bykowski, C.; Duke, F. F.; Reed, D. R. (2011). "Excretion and perception of a characteristic odor in urine after asparagus ingestion: A psychophysical and genetic study". Chemical Senses . 36 (1): 9–17. doi:10.1093/chemse/bjq081. PMC   3002398 . PMID   20876394.
  71. C. RICHER; N. DECKER; J. BELIN; J. L. IMBS; J. L. MONTASTRUC; J. F. GIUDICELLI (May 1989). "Odorous urine in man after asparagus". Br. J. Clin. Pharmacol. 27 (5): 640–1. doi:10.1111/j.1365-2125.1989.tb03431.x. PMC   1379934 . PMID   2757887.
  72. S. C. MITCHELL (May 1989). "Asparagus and malodorous urine". Br. J. Clin. Pharmacol. 27 (5): 641–2. doi:10.1111/j.1365-2125.1989.tb03432.x. PMC   1379935 . PMID   2757888.
  73. Pelchat, M. L.; Bykowski, C.; Duke, F. F.; Reed, D. R. (2010). "Excretion and Perception of a Characteristic Odor in Urine after Asparagus Ingestion: a Psychophysical and Genetic Study". Chemical Senses. 36 (1): 9–17. doi:10.1093/chemse/bjq081. PMC   3002398 . PMID   20876394.
  74. "The scientific chef: asparagus pee". The Guardian. 23 September 2005. Archived from the original on 4 May 2007. Retrieved 21 April 2007.
  75. Hannah Holmes. "Why Asparagus Makes Your Pee Stink". Discover.com. Archived from the original on 29 February 2008.
  76. Lison M, Blondheim SH, Melmed RN (1980). "A polymorphism of the ability to smell urinary metabolites of asparagus". Br Med J. 281 (6256): 1676–8. doi:10.1136/bmj.281.6256.1676. PMC   1715705 . PMID   7448566.
  77. Eriksson N, Macpherson JM, Tung JY, Hon LS, Naughton B, Saxonov S, Avey L, Wojcicki A, Pe'er I, Mountain J (2010). Gibson G (ed.). "Web-Based, Participant-Driven Studies Yield Novel Genetic Associations for Common Traits". PLOS Genet. 6 (6): e1000993. doi: 10.1371/journal.pgen.1000993 . PMC   2891811 . PMID   20585627.
  78. "National Asparagus Festival". asparagusfestival. Retrieved 20 October 2020.
  79. "About the Festival". British Aparagus Festival. British Asparagus Festival. Archived from the original on 27 March 2019. Retrieved 26 March 2019.
  80. 1 2 Davis, William A. (14 May 2008). "Buried treasure: white asparagus". The Christian Science Monitor. Schwetzingen, Germany. Retrieved 26 March 2019.